Uhlemann Thomas, Seidel Sebastian, Müller Christian W
Ruhr-Universität Bochum, Fakultät für Chemie und Biochemie, D-44780 Bochum, Germany.
Phys Chem Chem Phys. 2017 Jun 7;19(22):14625-14640. doi: 10.1039/c7cp01464c.
We have studied the conformational preferences of the sulfonamide drug sulfanilamide, its dimer, and its monohydrated complex through laser desorption single-conformation UV and IR spectroscopy in a molecular beam. Based on potential energy curves for the inversion of the anilinic and the sulfonamide NH groups calculated at DFT level, we suggest that the zero-point level wave function of the sulfanilamide monomer is appreciably delocalized over all four conformer wells. The sulfanilamide dimer, and the monohydrated complex each exhibit a single isomer in the molecular beam. The isomeric structures of the sulfanilamide dimer and the monohydrated sulfanilamide complex were assigned based on their conformer-specific IR spectra in the NH and OH stretch region. Quantum Theory of Atoms in Molecules (QTAIM) analysis of the calculated electron density in the water complex suggests that the water molecule is bound side-on in a hydrogen bonding pocket, donating one O-HO[double bond, length as m-dash]S hydrogen bond and accepting two hydrogen bonds, a NHO and a CHO hydrogen bond. QTAIM analysis of the dimer electron density suggests that the C symmetry dimer structure exhibits two dominating N-HO[double bond, length as m-dash]S hydrogen bonds, and three weaker types of interactions: two CHO bonds, two CHN bonds, and a chalcogen OO interaction. Most interestingly, the molecular beam dimer structure closely resembles the R dimer unit - the dimer unit with the greatest interaction energy - of the α, γ, and δ crystal polymorphs. Interacting Quantum Atoms analysis provides evidence that the total intermolecular interaction in the dimer is dominated by the short-range exchange-correlation contribution.
我们通过分子束中的激光解吸单构象紫外和红外光谱研究了磺胺类药物磺胺、其二聚体及其一水合物配合物的构象偏好。基于在密度泛函理论(DFT)水平计算的苯胺基和磺胺基NH基团反转的势能曲线,我们认为磺胺单体的零点能级波函数在所有四个构象阱上有明显的离域。磺胺二聚体和一水合物配合物在分子束中均表现出单一异构体。基于它们在NH和OH伸缩区域的构象特异性红外光谱确定了磺胺二聚体和一水合磺胺配合物的异构体结构。对水合物配合物中计算出的电子密度进行分子中的原子量子理论(QTAIM)分析表明,水分子以侧对侧的方式结合在一个氢键口袋中,提供一个O-H…O═S氢键并接受两个氢键,一个N-H…O氢键和一个C-H…O氢键。对二聚体电子密度的QTAIM分析表明,具有C对称性的二聚体结构表现出两个主要的N-H…O═S氢键,以及三种较弱的相互作用类型:两个C-H…O键、两个C-H…N键和一个硫属元素O…O相互作用。最有趣的是,分子束二聚体结构与α、γ和δ晶体多晶型物中相互作用能最大的R二聚体单元非常相似。相互作用量子原子分析提供了证据,表明二聚体中的总分子间相互作用由短程交换相关贡献主导。